Physical science in the time of Nero : $b being a translation of the Quaestiones naturales of SenecaSeneca, Lucius Annaeus
Philosophy
Physical science in the time of Nero : $b being a translation of the Quaestiones naturales of Seneca
Seneca, Lucius Annaeus
Comets; Earthquakes; Meteorology -- Early works to 1800
But, you say, the rivers are too large to be accounted for in this way.
Well, after you have considered the size of the rivers, just look at
the size of the reservoir whence they issue. Are you surprised that a 2
fresh supply of water is always forthcoming for them, since they flow
on for ever, some even rushing down their channel with impetuous haste?
Surely you might as well be surprised, when the winds drive hither
and thither the whole atmosphere, that the supply of air does not
fail, but flows on day and night unceasingly. And the wind, remember,
is not confined to a definite channel, as rivers are, but goes with
wide sweep over the broad expanse of heaven. You might well, too,
be surprised that after so many breakers have spent their force, any
succeeding wave is left. The truth is, nothing is ever exhausted that
returns upon itself (_i.e._ is self-supported). All the four elements 3
return alternately upon one another; what is lost in one is conserved
by passing into another. Nature, too, weighs her parts as if with
nice adjustment in the balance, lest their just proportion should be
disturbed and the world topple over into ruin (= lose its equilibrium).
All elements are in all. Air not only passes into fire, but it is never
without fire. Deprive it of its heat and it will grow stiff, stagnant,
hard. Air passes into moisture, but nevertheless contains moisture.
Earth yields both air and water, and is never at any time devoid 4
of water any more than it is of air. The mutual transition is the
easier, because there is already an admixture of the element to which
the transition is to be made. So (1)[51], then, the earth contains
moisture, which it forces out. (2)[51] It contains air, which the
darkness of its wintry cold condenses so as to form moisture. (3)[51]
By nature, too, it has itself the power of changing into moisture: this
power it habitually exerts.
[51] The numerals here have no counterpart in the original.
XI
You have still a difficulty, you say. If the causes giving rise to 1
rivers and fountains are constant, why are their waters sometimes
dried up? and why do they sometimes appear in places where they did
not exist before? Their routes, I should reply, are often disturbed by
earthquakes; the channel is cut off by a fall of rock or earth, and
the water being held back seeks a fresh exit, which it forces with a
certain measure of violence; or merely by the earth’s vibration the
course is shifted from one place to another. On the surface of the
earth one may observe that rivers that have lost their channels are
first of all dammed back, but afterwards, in lieu of the course they
have lost, force a new one. Theophrastus affirms that an incident of 2
the kind took place in the Corycian Mount,[52] where, after a slight
shock of earthquake, a fountain burst out from a fresh source.
[52] In Cilicia.
Public-domain text, read in full here on John Shaqi.
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